Microbiological interactions with cold plasma

Микробиологические взаимодействия с холодной плазмой
Paula Bourke, Dana Ziuzina, Lianshu Han, Patrick J. Cullen, Brendan Gilmore
2017-02-28

antimicrobial resistancebiofilmscold plasmamicrobial decontaminationreactive oxygen and nitrogen species
There is a diverse range of microbiological challenges facing the food, healthcare and clinical sectors. The increasing and pervasive resistance to broad-spectrum antibiotics and health-related concerns with many biocidal agents drives research for novel and complementary antimicrobial approaches. Biofilms display increased mechanical and antimicrobial stability and are the subject of extensive research. Cold plasmas (CP) have rapidly evolved as a technology for microbial decontamination, wound healing and cancer treatment, owing to the chemical and bio-active radicals generated known collectively as reactive oxygen and nitrogen species. This review outlines the basics of CP technology and discusses the interactions with a range of microbiological targets. Advances in mechanistic insights are presented and applications to food and clinical issues are discussed. The possibility of tailoring CP to control specific microbiological challenges is apparent. This review focuses on microbiological issues in relation to food- and healthcare-associated human infections, the role of CP in their elimination and the current status of plasma mechanisms of action.
1
Cold plasma generates reactive oxygen and nitrogen species that mediate bioactive interactions with diverse microbiological targets.
2
Cold plasma has potential applications against food- and healthcare-associated infections as an alternative or complement to antibiotics and biocidal agents.
3
Cold plasma is emerging as an antimicrobial technology for microbial decontamination, wound healing, and cancer treatment.
4
The review summarizes advancing mechanistic understanding of cold-plasma effects on microorganisms, including biofilms with enhanced mechanical and antimicrobial stability.
5
The technology may be tailored to address specific microbiological challenges, although its mechanisms of action remain an active research area.

cold plasma interactions with microbiological targets, including biofilms and infection-associated microorganisms

antimicrobial mechanisms and effectiveness of cold plasma in eliminating or controlling microbiological contamination and infections

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2017-02-28
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Authors
Paula Bourke
Dana Ziuzina
Lianshu Han
Patrick J. Cullen
Brendan Gilmore
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